Stable isotope probing (SIP) was used to identify the aerobic toluene-degrading microorganism in soil microcosms. Several approaches (terminal restriction fragment length polymorphism, 16S rRNA gene sequencing, and quantitative PCR) provided evidence that the microorganism responsible was a member of the genus Polaromonas and could grow on toluene. This microorganism also transformed benzene, but not m-xylene or cis-dichloroethene.Biotechnology & Applied MicrobiologyMicrobiologySCI(E)EI20ARTICLE3956-9597
This study addresses two questions regarding the microbial community structure shift in MTBE-contami...
A metagenomic study on sediment from a former gasworks site located in Düsseldorf- Flingern was cond...
A metagenomic study on sediment from a former gasworks site located in Düsseldorf- Flingern was cond...
The dominant bacterium responsible for carbon uptake from toluene in an agricultural soil was identi...
The dominant bacterium responsible for carbon uptake from toluene in an agricultural soil was identi...
A toluene-degrading microbial consortium was enriched directly in a BTEX-contaminated aquifer under ...
The remediation of benzene contaminated groundwater often involves biodegradation and although the m...
The microbial potential for toluene degradation within sediments from a tar oil-contaminated site in...
Phospholipid fatty acid (PLFA) analysis of a soil microbial community was coupled with 13C isotope t...
Introduction. Metagenomic analysis of polluted sites holds great promise in bioremediation. It has t...
A metagenomic procedure was developed to assess microbial potential for toluene degradation within t...
The remediation of groundwater contaminated with benzene, toluene, ethylbenzene, and the xylenes (BT...
DNA stable isotope probing (DNA-SIP) with H218O was used to identify a toluene-degrading bacterium i...
DNA stable isotope probing (DNA-SIP) with H218O was used to identify a toluene-degrading bacterium i...
Global groundwater resources are constantly challenged by a multitude of contaminants such as aromat...
This study addresses two questions regarding the microbial community structure shift in MTBE-contami...
A metagenomic study on sediment from a former gasworks site located in Düsseldorf- Flingern was cond...
A metagenomic study on sediment from a former gasworks site located in Düsseldorf- Flingern was cond...
The dominant bacterium responsible for carbon uptake from toluene in an agricultural soil was identi...
The dominant bacterium responsible for carbon uptake from toluene in an agricultural soil was identi...
A toluene-degrading microbial consortium was enriched directly in a BTEX-contaminated aquifer under ...
The remediation of benzene contaminated groundwater often involves biodegradation and although the m...
The microbial potential for toluene degradation within sediments from a tar oil-contaminated site in...
Phospholipid fatty acid (PLFA) analysis of a soil microbial community was coupled with 13C isotope t...
Introduction. Metagenomic analysis of polluted sites holds great promise in bioremediation. It has t...
A metagenomic procedure was developed to assess microbial potential for toluene degradation within t...
The remediation of groundwater contaminated with benzene, toluene, ethylbenzene, and the xylenes (BT...
DNA stable isotope probing (DNA-SIP) with H218O was used to identify a toluene-degrading bacterium i...
DNA stable isotope probing (DNA-SIP) with H218O was used to identify a toluene-degrading bacterium i...
Global groundwater resources are constantly challenged by a multitude of contaminants such as aromat...
This study addresses two questions regarding the microbial community structure shift in MTBE-contami...
A metagenomic study on sediment from a former gasworks site located in Düsseldorf- Flingern was cond...
A metagenomic study on sediment from a former gasworks site located in Düsseldorf- Flingern was cond...